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Mulberry and dandelion water extracts prevent alcohol-induced steatosis with alleviating gut microbiome dysbiosis

机译:桑树和蒲公英水提取物可预防酒精引起的脂肪变性并减轻肠道微生物组营养不良

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摘要

Chronic alcohol intake causes hepatic steatosis and changes the body composition and glucose metabolism. We examined whether water extracts of mulberry (WMB) and white flower dandelion (Taraxacum coreanum Nakai, WTC) can prevent and/or delay the symptoms of chronic ethanol-induced hepatic steatosis in male Sprague Dawley rats, and explored the mechanisms. Ethanol degradation was examined by orally administering 3 g ethanol/kg bw after giving them 0.3 g/kg bw WMB or WTC. All rats were continuously provided about 7 g ethanol/kg bw/day for four weeks and were given either of 0.1% dextrin (control), WMB, WTC, or water extracts of Hovenia dulcis Thunb fruit (positive-control) in high-fat diets. Area under the curve of serum ethanol levels was lowered in descending order of control, WTC and positive-control, and WMB in acute ethanol challenge. WMB and WTC prevented alcohol intake-related decrease in bone mineral density and lean body mass compared to the control. After glucose challenge, serum glucose levels increased more in the control group than other groups in the first part and the rate of decrease after 40 min was similar among all groups. These changes were associated with decreasing serum insulin levels. WMB had the greatest efficacy for decreasing triglyceride and increasing glycogen deposits. WMB and WTC prevented the disruption of the hepatic cells and nuclei while reducing malondialdehyde contents in rats fed alcohol, but the prevention was not as much as the normal-control. The ratio of Firmicutes to Bacteroidetes in the gut was much higher in the control than the normal-control, but WTC and WMB decreased the ratio compared to the control. WMB and WTC separated the gut microbiota community from the control. In conclusion, WMB and WTC protected against alcoholic liver steatosis by accelerating ethanol degradation and also improved body composition and glucose metabolism while alleviating the dysbiosis of gut microbiome by chronic alcohol intake.Impact statementExcessive alcohol consumption is associated with serious pathologies and is common in much of the world. Pathologies include liver damage, glucose intolerance, and loss of lean body mass and bone mass. These pathologies are mediated by changes in metabolism as well as toxic metabolic byproducts, and possibly by gut dysbiosis. In this study, we demonstrate that aqueous extracts of mulberry and dandelion protected rats against ethanol-induced losses in lean body and bone masses, improved glucose tolerance and partially normalized gut bacterial populations, with mulberry extract being generally more effective. This research suggests that mulberry and dandelion extracts may have the potential to improve some of the pathologies associated with excess alcohol consumption, and that further clinical research is warranted.
机译:长期摄入酒精会导致肝脂肪变性,并改变人体成分和葡萄糖代谢。我们研究了桑树(WMB)和白花蒲公英(蒲公英蒲公英,WTC)的水提取物是否可以预防和/或延迟雄性Sprague Dawley大鼠慢性乙醇诱发的肝脂肪变性的症状,并探讨了其机制。在给予WMB或WTC0.3μg/ kg bw乙醇后,通过口服3μg乙醇/ kg bw来检查乙醇的降解。连续四周每天为所有大鼠提供约7μg乙醇/ kg bw /天,并给予高脂的0.1%糊精(对照组),WMB,WTC或Hovenia dulcis Thunb果实水提取物(阳性对照组)饮食。在急性乙醇攻击中,血清乙醇水平曲线下的面积按对照,WTC和阳性对照以及WMB的降序降低。与对照组相比,WMB和WTC阻止了与酒精摄入有关的骨矿物质密度和瘦体重的下降。葡萄糖激发后,对照组的血糖水平在第一部分比其他组增加更多,并且所有组在40分钟后的下降速率相似。这些变化与血清胰岛素水平降低有关。 WMB在减少甘油三酸酯和增加糖原沉积方面具有最大功效。 WMB和WTC可以减少饮酒大鼠的丙二醛含量,同时防止肝细胞和细胞核的破坏,但这种预防作用不及正常对照。对照中肠中硬菌与拟杆菌的比例比正常对照高得多,但是与对照相比,WTC和WMB降低了比例。 WMB和WTC将肠道菌群与对照区分开。总之,WMB和WTC可以通过加速乙醇降解来预防酒精性肝脂肪变性,并改善机体组成和葡萄糖代谢,同时缓解因长期饮酒而引起的肠道微生物组营养不良的影响。过量饮酒与严重的病理相关,在许多人中很常见世界。病理包括肝损伤,葡萄糖耐受不良以及瘦体重和骨量的损失。这些病理是由新陈代谢的变化以及有毒的代谢副产物,可能是由肠道营养不良引起的。在这项研究中,我们证明了桑树和蒲公英的水提物可保护大鼠免受乙醇引起的瘦体和骨质流失,改善的葡萄糖耐量和部分归一化的肠道细菌数量,桑树提取物通常更有效。这项研究表明,桑and和蒲公英提取物可能具有改善某些与过量饮酒有关的病理的潜力,因此有必要进行进一步的临床研究。

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